Formic Acid - Triethylamine (5:2) Azeotrope

≥98%

  • Product Code: 78921
  CAS:    15077-13-1
Molecular Weight: 86.5 g./mol Molecular Formula: ₅CH₂O₂₂C₆H₁₅N
EC Number: MDL Number: MFCD00040600
Melting Point: Boiling Point:
Density: Storage Condition: room temperature, dry
Product Description: Formic Acid - Triethylamine (5:2) Azeotrope is primarily used as a reducing agent in various organic synthesis processes. It is particularly effective in reductive amination reactions, where it facilitates the conversion of carbonyl compounds into amines. This azeotrope is also employed in the synthesis of pharmaceuticals, where it acts as a mild and selective reducing agent, ensuring high yields and purity of the final products. Additionally, it finds application in the production of fine chemicals and agrochemicals, where its ability to provide controlled reduction is highly valued. The azeotrope's stability and ease of handling make it a preferred choice in laboratory and industrial settings for reactions requiring precise and efficient reduction.
Product Specification:
Test Specification
APPEARANCE COLORLESS LIQUID
PURITY 98
REFRACTURE INDEX N20D 1.4250-1.4310
SPECIFIC GRAVIY2020 1.0350-1.0390
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
5.000 10-20 days ฿2,060.00
+
-
25.000 10-20 days ฿6,700.00
+
-
100.000 10-20 days ฿17,880.00
+
-
Formic Acid - Triethylamine (5:2) Azeotrope
Formic Acid - Triethylamine (5:2) Azeotrope is primarily used as a reducing agent in various organic synthesis processes. It is particularly effective in reductive amination reactions, where it facilitates the conversion of carbonyl compounds into amines. This azeotrope is also employed in the synthesis of pharmaceuticals, where it acts as a mild and selective reducing agent, ensuring high yields and purity of the final products. Additionally, it finds application in the production of fine chemicals and agrochemicals, where its ability to provide controlled reduction is highly valued. The azeotrope's stability and ease of handling make it a preferred choice in laboratory and industrial settings for reactions requiring precise and efficient reduction.
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